Acquired thermotolerance in plants
Author:
Publisher
Springer Science and Business Media LLC
Subject
Horticulture
Link
http://link.springer.com/content/pdf/10.1007/s11240-012-0198-6.pdf
Reference93 articles.
1. Abernethy RH, Thiel DS, Petersen NS, Helm K (1989) Thermotolerance is developmentally dependent in germinating wheat seed. Plant Physiol 89(2):569–576
2. Ahrman E, Lambert W, Aquilina JA, Robinson CV, Emanuelsson CS (2007) Chemical cross-linking of the chloroplast localized small heat-shock protein, Hsp21, and the model substrate citrate synthase. Protein Sci 16:1464–1478
3. Aviezer-Hagai K, Skovorodnikova J, Galigniana M, Farchi-Pisanty O, Maayan E, Bocovza S, Efrat Y, von Koskull-Doring P, Ohad N, Breiman A (2007) Arabidopsis immunophilins ROF1 (At-FKBP62) and ROF2 (AtFKBP65) exhibit tissue specificity, are heat-stress induced, and bind HSP90. Plant Mol Biol 63:237–255
4. Basha E, Friedrich KL, Vierling E (2006) The N-terminal arm of small heat shock proteins is important for both chaperone activity and substrate specificity. J Biol Chem 281(52):39943–39952
5. Beere H (2004) ‘The stress of dying’: the role of heat shock proteins in the regulation of apoptosis. J Cell Sci 117:2641–2651
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